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一种新型测力计,可测量加速、减速或等速运动中的向心和离心肌肉力量。效度和可重复性。

A new dynamometer measuring concentric and eccentric muscle strength in accelerated, decelerated, or isokinetic movements. Validity and reproducibility.

作者信息

Seger J Y, Westing S H, Hanson M, Karlson E, Ekblom B

机构信息

University College of Physical Education, Stockholm, Sweden.

出版信息

Eur J Appl Physiol Occup Physiol. 1988;57(5):526-30. doi: 10.1007/BF00418457.

Abstract

A new computerized dynamometer (the SPARK System) is described. The system can measure concentric and eccentric muscle strength (torque) during linear or nonlinear acceleration or deceleration, isokinetic movements up to 400 degrees.s-1, and isometric torque. Studies were performed to assess: I. validity and reproducibility of torque measurements; II. control of lever arm position; III. control of different velocity patterns; IV. control of velocity during subject testing; and, V. intra-individual reproducibility. No significant difference was found between torque values computed by the system and known torque values (p greater than 0.05). No difference was present between programmed and external measurement of the lever arm position. Accelerating, decelerating and isokinetic velocity patterns were highly reproducible, with differences in elapsed time among 10 trials being never greater than 0.001 s. Velocity during concentric and eccentric isokinetic quadriceps contractions at 30 degrees.s-1, 120 degrees.s-1 and 270 degrees.s-1 never varied by more than 3 degrees.s-1 among subjects (N = 21). Over three days of testing, the overall error for concentric and eccentric quadriceps contraction peak torque values for 5 angular velocities between 30 degrees.s-1 and 270 degrees.s-1 ranged from 5.8% to 9.0% and 5.8% to 9.6% respectively (N = 25). The results indicate that the SPARK System provides valid and reproducible torque measurements and strict control of velocity. In addition, the intra-individual error is in accordance with those reported for other similar devices.

摘要

本文介绍了一种新型计算机测力计(SPARK系统)。该系统可测量线性或非线性加速或减速过程中的向心和离心肌肉力量(扭矩)、高达400度·秒⁻¹的等速运动以及等长扭矩。进行了多项研究以评估:I. 扭矩测量的有效性和可重复性;II. 杠杆臂位置的控制;III. 不同速度模式的控制;IV. 受试者测试期间的速度控制;以及V. 个体内的可重复性。系统计算得出的扭矩值与已知扭矩值之间未发现显著差异(p>0.05)。杠杆臂位置的编程测量与外部测量之间没有差异。加速、减速和等速速度模式具有高度可重复性,10次试验之间的时间间隔差异从未超过0.001秒。在30度·秒⁻¹、120度·秒⁻¹和270度·秒⁻¹时,受试者(N = 21)向心和离心等速股四头肌收缩期间的速度变化从未超过3度·秒⁻¹。在三天的测试中,30度·秒⁻¹至270度·秒⁻¹之间5种角速度下向心和离心股四头肌收缩峰值扭矩值的总体误差分别为5.8%至9.0%和5.8%至9.6%(N = 25)。结果表明,SPARK系统提供了有效且可重复的数据测量,并能严格控制速度。此外,个体内误差与其他类似设备报告的误差一致。

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